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KIMD

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Abstract: KIMD-1 Nobel Weighing Systems Weigh Module FEATURES â'¢ Simple installation â'¢ No extra mounting detail is needed â'¢ Suitable for weighing in large size â'¢ Movable load point â'¢ Allow movement caused by thermal expansion â'¢ Atex approved for hazardous areas TECHNICAL DATA Rated load , , www.weighingsolutions.com China: pw.prc@vishaypg.com, Taiwan: pw.roc@vishaypg.com 1 KIMD-1 Nobel Weighing Systems Weigh Module DIMENSIONS KIMD-1 MODULE 205 +1 -2 50 30 20 A-A 25 1B Ø 018 Vishay Nobel
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Vishay nobel

Abstract: KIMD KIMD-1 Vishay Nobel Transducers Weigh Module FEATURES Simple installation No extra mounting detail is needed Suitable for weighing in large size Movable load point Allow movement caused by thermal expansion Atex approved for hazardous areas TECHNICAL DATA Rated load (R.L.) Combined error (terminal) Repeatability kN % of R.O. % of R.O. 500, 800 ± 0.1 0.02 % of R.L , °C www.vishay.com 1 KIMD-1 Vishay Nobel Weigh Module Transducers DIMENSIONS KIMD-1 MODULE 205 +1
Vishay Nobel
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Abstract: "¦ TX_POL TIN+ 1 TIN- 0 BIAS MONITOR BMON Tx POWER MONITOR MDIN MDREF KRMD KIMD , signal range by having adjustable gain settings. The KIMD[1:0] bits set the current gain. This is , MDMON_EN = 1 and MON_SEL = 1. In this mode, the current sourced by BMON is scaled by KIMD, where the value KIMD is set by the KIMD[1:0] bits. The high bandwidth of the MDINâ'"BMON path enables tuning of , , and the MD current is amplified by a gain set by the KIMD[1:0] and KRMD[2:0] bits. The output of the Maxim Integrated Products
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DPC 31

Abstract: MDIN 165 12.5 FA LASER POWER DETECTOR (LPD) SPECIFICATIONS KIMD[1:0] = 00: N = LPD_TH[2:0] + 1, KIMD[1:0] = 01: N = 2 x (LPD_TH[2:0] + 1), KIMD[1:0] = 1X: N = 4 x (LPD_TH[2:0] + 1) LPD Threshold Values , - 0 BURST CONTROL MDIN LASER POWER DETECTOR MDREF KRMD KIMD LPD Figure 2 , covers a large input signal range by having adjustable gain settings. The KIMD[1:0] bits set the , setting MDMON_EN = 1 and MON_SEL = 1. In this mode, the current sourced by BMON is scaled by KIMD, where
Maxim Integrated Products
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MDIN 165

Abstract: 1400W required time DISABLE must be held high to reset a fault KIMD[1:0] = 00: N = LPD_TH[2:0] + 1, KIMD[1:0] = 01: N = 2 x (LPD_TH[2:0] + 1), KIMD[1:0] = 1X: N = 4 x (LPD_TH[2:0] + 1) VFS SET_CML[3:0] = 15d 4 , MDIN MDREF KRMD KIMD LPD Figure 2. Functional Diagram 17 MAX3710 125Mbps to 2.5Gbps, Integrated , covers a large input signal range by having adjustable gain settings. The KIMD[1:0] bits set the current , MDMON_EN = 1 and MON_SEL = 1. In this mode, the current sourced by BMON is scaled by KIMD, where the value
Maxim Integrated Products
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MDIN 165 1400W 2800w power amplifier circuit diagram GPON block diagram HFAN-08 20-PIN BML15HG102

1400W

Abstract: KIMD BIAS MONITOR Tx POWER MONITOR BMON MDIN MDREF KRMD KIMD Figure 2. Functional Diagram 15 , gain settings. The KIMD[1:0] bits set the current gain. This is followed by an adjustable , , the current sourced by BMON is scaled by KIMD, where the value KIMD is set by the KIMD[1:0] bits. The , diode (MD) is connected to the MDIN pin, and the MD current is amplified by a gain set by the KIMD[1:0 , transmitter power, use the following equation: MD0[15 : 0] + MD1[15 : 0] 8 = PAVG 0.00292 × 512 × KIMD × KRMD
Maxim Integrated Products
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KIMD Diode RJ 4B TOSA CWDM MAX3711 MAX15059

MIL-STD-883H

Abstract: :1), Cl = 470nF, RSET = 10kQ V(IN) I V(CWD) V(CI) K'IMD) - T im « Figure 8 shows the signal
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OCR Scan
MIL-STD-883H C-WJB-S08

for APD bias

Abstract: Zeichnungs-Nr. / Drawing No.: Reindl Keck DB3C-A1RC Ersatz fur/Replace far: Kimde/Custpmer : G .m .
Maxim Integrated Products
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for APD bias DS1886 SFF-8472 MAX3945 MAX3710/DS1886 T2445

maxim adc 16 bit 8 channel

Abstract: , PLASMA. LCb. 8/16-BIT COLOR STKI, 9/12/18-BIT TFT COLOh FLAT PANEL RPLTIWPLT BLAN KIMDETECT
Maxim Integrated Products
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maxim adc 16 bit 8 channel
Abstract: ) 746-1111 â'¢ T\m: »1MSM111 â'¢ Cat*: BSftCOfiP â'¢ T>ta:066-64ri . FAX:(602)SM-1510 â'¢ kimdMe Product Maxim Integrated Products
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